Structural and functional diversity in Listeria cell wall teichoic acids.
Yang ShenSamy BoulosEric SumrallBenjamin GerberAlicia Julian-RoderoMarcel R EugsterLars FieselerLaura NyströmMarc-Olivier EbertMartin J LoessnerPublished in: The Journal of biological chemistry (2017)
Wall teichoic acids (WTAs) are the most abundant glycopolymers found on the cell wall of many Gram-positive bacteria, whose diverse surface structures play key roles in multiple biological processes. Despite recent technological advances in glycan analysis, structural elucidation of WTAs remains challenging due to their complex nature. Here, we employed a combination of ultra-performance liquid chromatography-coupled electrospray ionization tandem-MS/MS and NMR to determine the structural complexity of WTAs from Listeria species. We unveiled more than 10 different types of WTA polymers that vary in their linkage and repeating units. Disparity in GlcNAc to ribitol connectivity, as well as variable O-acetylation and glycosylation of GlcNAc contribute to the structural diversity of WTAs. Notably, SPR analysis indicated that constitution of WTA determines the recognition by bacteriophage endolysins. Collectively, these findings provide detailed insight into Listeria cell wall-associated carbohydrates, and will guide further studies on the structure-function relationship of WTAs.
Keyphrases
- cell wall
- high resolution
- ms ms
- liquid chromatography
- mass spectrometry
- magnetic resonance
- listeria monocytogenes
- genome wide
- gene expression
- tandem mass spectrometry
- dna methylation
- resting state
- high performance liquid chromatography
- human immunodeficiency virus
- functional connectivity
- antiretroviral therapy
- simultaneous determination
- histone deacetylase
- hepatitis c virus
- hiv infected
- ultra high performance liquid chromatography
- solid phase extraction